将冷热电三联供系统与海水淡化技术相结合,为教育建筑提供可持续能源和水解决方案的新方法

Faizah Mohammed Bashir, Emmanuel Falude, I. Alsadun, Haifa Youssef Hamdoun, Mohamed Ahmed Said Mohamed, N. M. Shannan, Ahmad Usman Naibi
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摘要

本研究提出了一种将冷热电三联供(CCHP)系统与海水淡化相结合的新方法,以加强教育建筑的能源和水资源管理。研究介绍了冷热电三联供系统和海水淡化系统的两种不同布局:一种布局优先考虑高效发电,以满足电力需求,同时为海水淡化提供余热;另一种布局则侧重于平衡冷热负荷和海水淡化。两种布局都能满足建筑的能源和用水需求,同时考虑到运行效率。使用蝙蝠搜索算法对这些布局与传统系统进行优化,强调经济可行性和燃气发动机的运行灵活性,这对部分负荷运行至关重要。此外,环境评估还将拟议的冷热电联产脱盐系统与传统装置进行了比较,评估了二氧化碳减排量和整体可持续性。评估包括关键的环境指标,如资源消耗和可再生能源的整合。结果表明,不同功率的燃气发动机都能显著减少二氧化碳排放量,在冷热电联产脱盐系统中选择 3,250 千瓦的燃气发动机能明显提高经济和环保性能。与传统系统相比,这一选择不仅实现了年利润最大化,还减少了 57% 的二氧化碳排放量,凸显了系统的可持续发展优势。
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A novel approach to integrate CCHP systems with desalination for sustainable energy and water solutions in educational buildings
This study presents a novel approach to integrating combined cooling, heating, and power (CCHP) systems with water desalination for enhanced energy and water management in educational buildings. Two distinct layouts for CCHP and desalination systems are introduced: one prioritizing efficient power generation to meet electricity demands while providing waste heat for desalination, and the other focusing on balancing cooling and heating loads alongside water desalination. Both layouts are tailored to meet the building's energy and water demands while considering operational efficiency. Optimization of these layouts against traditional systems using the bat search algorithm emphasizes economic viability and the gas engine's operational flexibility, which are crucial for partial load operation. In addition, an environmental assessment compares the proposed CCHP-desalination systems with conventional setups, assessing CO2 emission reductions and overall sustainability. The evaluation encompasses key environmental metrics, such as resource consumption and the integration of renewable energy sources. Results highlight significant CO2 emission reductions across various gas engine capacities, with notable enhancements in economic and environmental performance achieved by selecting a 3,250 kW gas engine within the CCHP-desalination system. This choice not only maximizes the annual profit but also reduces CO2 emissions by 57% compared to conventional systems, underscoring the system's sustainability benefits.
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